堆
码头
欧洲规范
桥(图论)
地震动
地震分析
工程类
土-结构相互作用
结构工程
概率逻辑
土木工程
岩土工程
建筑工程
计算机科学
有限元法
人工智能
内科学
医学
作者
Mircea Conțiu,Dan M. Ghiocel,Dan Cretu,Marius Florin Botis
摘要
In current design practice, typical seismic design of bridges tends to use simplified approaches. On the opposite side, the most advanced seismic analyses currently used in practice in all the fields of structural engineering are probably the ones used for the design of nuclear facilities, which include soil–structure interaction and motion incoherency effects. From that category, the most modern methodology is the probabilistic approach, which has been added to the new ASCE 4 standard. This type of state-of-the-art analysis is carried out in ACS SASSI software on a typical concrete bridge structure with deep foundations. A comparison of the results with the deterministic SSI approach and the typical Eurocode design from previous studies is presented at the end. Major differences in behavior are highlighted, which impact the overall safety of the structure.
科研通智能强力驱动
Strongly Powered by AbleSci AI